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Block Time-Recursive Real-Valued Discrete Gabor Transform Implemented by Unified Parallel Lattice Structures

机译:统一并行格结构实现的块时间递归实值离散Gabor变换

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摘要

In this paper, the 1-D real-valued discrete Gabor transform (RDGT) proposed in our previous work and its relationship with the complex-valued discrete Gabor transform (CDGT) are briefly reviewed. Block time-recursive RDGT algorithms for the efficient and fast computation of the 1-D RDGT coefficients and for the fast reconstruction of the original signal from the coefficients are then developed in both the critical sampling case and the oversampling case. Unified parallel lattice structures for the implementation of the algorithms are studied. And the computational complexity analysis and comparison show that the proposed algorithms provide a more efficient and faster approach for the computation of the discrete Gabor transforms.
机译:在本文中,简要回顾了我们先前工作中提出的一维实值离散Gabor变换(RDGT)及其与复值离散Gabor变换(CDGT)的关系。然后,在关键采样情况和过采样情况下,都开发了块时间递归RDGT算法,以高效,快速地计算一维RDGT系数,并根据这些系数快速重建原始信号。研究了用于实现算法的统一并行晶格结构。计算复杂度的分析和比较表明,所提出的算法为离散Gabor变换的计算提供了一种更有效,更快的方法。

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